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Nonradial oscillations of neutron stars and emitted gravitational waves: Computing strongly damped normal modes

机译:中子恒星的非移位振动和发射的引力波:计算强烈阻尼的正常模式

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摘要

In this paper, we compute eigenfrequencies of strongly damped normal modes arising from the coupling of the nonradial oscillations of a neutron star to the oscillations of the space-time metric, so-called "w-modes", by integrating all involved differential equations in the complex plane. Regarding the interior of the star, we use the so-called "complex-plane strategy". Specifically, we integrate the differential equations of the nonradial fluid oscillations of a general-relativistic polytropic model, simulating the star, along a straight-line contour placed parallel to the real axis and at small imaginary distance from it, thus avoiding a singularity at the stellar center. Regarding the exterior of the star, we use a method proposed by Andersson, Kokkotas and Schutz, following a slightly different terminating procedure. Specifically, (i) we integrate the equations along a straight-line contour lying parallel to the so-called "anti-Stokes lines", on which the exponential divergence of the solution is drastically suppressed, so that the outgoing and ingoing waves become comparable; and (ii) we carry out one final integration up to a "common reference point", thus comparing all results at this point. We verify the reliability and accuracy of the method by comparing our numerical results to corresponding ones appearing in the bibliography.
机译:在本文中,通过将所有涉及的微分方程集成在内复杂的飞机。关于明星的内部,我们使用所谓的“复杂平面战略”。具体而言,我们整合了一般相对论的多层模型的非移位流体振荡的微分方程,沿着与真实轴平行的直线轮廓模拟了星形,从而避免了奇点恒星中心。关于明星的外部,我们使用Andersson,Kokkotas和Schutz提出的方法,稍微不同的终止程序。具体地,(i)我们沿着平行于所谓的“反斯托克斯线”的直线轮廓集成了方程,其中溶液的指数发散急剧抑制,因此输出和凝固波变得可比; (ii)我们对“公共参考点”进行了一个最终集成,从而比较了这一点的所有结果。通过将我们的数值结果与出现在参考书目中出现的相应结果进行比较,我们通过比较来验证该方法的可靠性和准确性。

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